• DocumentCode
    2279759
  • Title

    Optimization of autonomous hybrid energy storage system for photovoltaic applications

  • Author

    Glavin, M.E. ; Chan, Paul K W ; Hurley, W.G.

  • Author_Institution
    Power Electron. Res. Centre, Nat. Univ. of Ireland Galway, Galway, Ireland
  • fYear
    2009
  • fDate
    20-24 Sept. 2009
  • Firstpage
    1417
  • Lastpage
    1424
  • Abstract
    Autonomous photovoltaic systems require an energy buffer to match the generation with the time distribution of demand, as photovoltaic is time and weather dependent. The Valve Regulated Lead Acid (VRLA) battery is commonly used for photovoltaic storage because of its low cost, low maintenance, and wide availability. A hybrid energy storage system (HESS) integrates the VRLA battery and ultracapacitor, drawing on their respective advantages at appropriate times. By combining an ultracapacitor with a VRLA battery, the power density of the overall system is increased. The ultracapacitor operates under high power conditions reducing the strain of large current draw from the VRLA battery. This paper outlines a methodology to optimize the combination of VRLA batteries and ultracapacitors in the photovoltaic system taking the load demand, solar irradiation, and ambient temperature into account. A photovoltaic system is simulated in Matlab Simulink to analyze the results of the optimization.
  • Keywords
    optimisation; photovoltaic power systems; secondary cells; supercapacitors; Matlab Simulink simulation; autonomous hybrid energy storage system; optimization; photovoltaic applications; ultracapacitor; valve regulated lead acid battery; Autonomous; Hybrid Energy Storage System; Optimization; Photovoltaic; Ultracapacitor; VRLA Battery;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Energy Conversion Congress and Exposition, 2009. ECCE 2009. IEEE
  • Conference_Location
    San Jose, CA
  • Print_ISBN
    978-1-4244-2893-9
  • Electronic_ISBN
    978-1-4244-2893-9
  • Type

    conf

  • DOI
    10.1109/ECCE.2009.5316370
  • Filename
    5316370